中国科学院| 青岛生物能源与过程研究所

研究队伍

     

 

 

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简历

徐华,博士,副研究员。2004年于南开大学获得学士学位,2013年毕业于中国科学院植物研究所获得博士学位。2004-2006 中科院植物所实验员,2013-2015年在中国科学院青岛生物能源与过程研究所进行博士后研究。2016年进入中国科学院青岛生物能源与过程研究所工作,主要从事植物黄酮合成调控的分子机制解析方面的研究。先后主持国家自然科学基金项目1项(青年基金)、中国博士后科学基金1项(面上项目)、山东省自然科学基金2项和青岛市源头创新计划(应用研究专项--青年专项)和青岛市博士后研究人员应用研究项目。

承担项目情况

    国家自然科学基金青年基金1项、中国博士后科学基金1项、山东省自然科学基金2项、青岛市项目2项。

代表性论著

迄今总共发表SCI论文13篇,中其中7篇为近三年发表论文。#为并列第一作者,*为通讯作者。具体论文如下:

(1)Tang XF, Wang CP, Liu Y, He G, Ma NN, Chai GH, Li SJ, Xu H * , Zhou GK *. Brassinosteroid signaling converges with auxin-mediated C3H17 to regulate xylem formation in Populus. Frontiers in Plant Science, 2020, 11: 586014IF: 5.753

(2)Liu Y # , Xu H # , Wang Y, Tang XF, He G, Wang SM, Ma YB, Kong YZ, Yu CJ * , Zhou GK * . A submerged duckweed mutant with adundant starch accumulation for bioethanol production. Global Change Biology Bioenergy, 2020, 12: 1078-1091.IF: 4.745

(3)Xu H, Ding AM, Chen SH, Marowa P, Wang D, Chen M, Hu RB, Kong YZ, O’Neill MA, Chai GH*, Zhou GK*. Genome-wide analysis of sorghum GT47 family reveals functional divergences of MUR3-like genes. Frontiers in Plant Science, 2018, 9: 1773.IF: 5.753

(4)Xu H, Yu CJ, Xia XL, Li ML, Li HG, Wang Y, Wang SM, Wang CP, Ma YB*, Zhou GK*. Comparative transcriptome analysis of duckweed (Landoltia punctata) in response to cadmium provides insights into molecular mechanisms underlying hyperaccumulation. Chemosphere, 2018, 190: 154-165.IF: 7.086

(5)Xu H # , Xu WZ # , Xi HM, Ma WW, He ZY, Ma M*.The ER luminal binding protein (BiP) alleviates Cd 2+ -induced programmed cell death through endoplasmic reticulum stress-cell death signaling pathway in tobacco cells. Journal of Plant Physiology, 2013, 170: 1434-1441.IF: 3.549

(6)Liu Y, Xu H, Yu CJ*, Zhou GK*. Multifaceted roles of duckweed in aquatic phytoremediation and bioproducts synthesis. Global Change Biology Bioenergy, 2021, 00: 1-13.IF: 4.745

(7)Wang D, Xu H, Huang JY, Kong YZ, AbuQamar S, Yu DQ, Liu SY, Zhou GK*, Chai GH*. The Arabidopsis CCCH protein C3H14 contributes to basal defense against Botrytis cinerea mainly through the WRKY33-dependent pathway. Plant Cell and Environment, 2020, 43: 1792-1806.IF: 7.228

(8)Zhang Y, Xu H, Kong YZ, Huang JW, Tang XF, Zhuang YM, Bai Y, Zhou GK*, Chai GH*. Wood forming tissus-specific expression of PdSuSy and HCHL increases holocellulose content and improves saccharification in Populus. Journal of Forestry Research, 2020.IF: 2.149

(9)Chen L, Yu CJ, Ma YB, Xu H, Wang SM, Wang Y, Liu XX, Zhou GK*. Insights into the structural and physicochemical properties of small granular starches from two hydrophyte duckweeds, Spirodela oligorrhiza and Lemna minor. Carbohydrate Research, 2016, 435: 208-214.IF: 2.104

(10)Xi HM, Xu H, Xu WX, He ZY, Xu WZ*, Ma M*. A sal1 loss-of function Arabidopsis mutant exhibits enhanced cadmium tolerance in association with alleviation of endoplasmic reticulum stress. Plant and Cell Physiology, 2016, 57: 1210-1219. IF: 4.927

(11)Xu WZ, Dai WT, Yan HL, Li S, Shen HL, Chen YS, Xu H, Sun YY, He ZY, Ma M*. Arabidopsis NIP3;1 plays an important role in arsenic uptake and root-to-shoot translocation under arsenite stress conditions. Molecular Plant, 2015, 8: 722-733.IF: 13.164

(12)Yu CJ, Sun CJ, Yu L, Zhu M, Xu H, Zhao JS, Ma YB, Zhou GK*. Comparative analysis of duckweed cultivation with sewage water and SH media for production of fuel ethanol. PLoS ONE, 2014, 9: e115023.IF: 3.240

(13)Ma WW, Xu WZ, Xu H, Chen YS, He ZY, Ma M*. Nitric oxide modulates cadmium influx during cadmium-induced programmed cell death in tobacco BY-2 cells. Planta, 2010, 232: 325-335.IF: 4.116

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